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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Simultaneous transesterification and esterification of unrefined or waste oils over ZnO-La2O3 catalysts
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Simultaneous transesterification and esterification of unrefined or waste oils over ZnO-La2O3 catalysts

机译:ZnO-La2O3催化剂同时对未精制或废油进行酯交换和酯化

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摘要

A single-step method was developed for biodiesel production from unrefined or waste oils using a series of heterogeneous zinc and lanthanum mixed oxides. Effects of metal oxide molar ratio, free fatty acids (FFA) and water content in feedstock, molar ratio of methanol and oil, and reaction temperature on the yield of biodiesel were investigated. A strong interaction between Zn and La species was observed with enhanced catalyst activities. Lanthanum promoted zinc oxide distribution, and increased the surface acid and base sites. The catalyst with 3:1 ratio of zinc to lanthanum was found to simultaneously catalyze the oil transesterification and fatty acid esterification reactions, while minimizing oil and biodiesel hydrolysis. A reaction temperature window of 170-220 °C was found for the biodiesel formation. A high yield (96%) of fatty acid methyl esters (FAME) was obtained within 3 h even using unrefined or waste oils.
机译:开发了一种单步方法,用于使用一系列异质锌和镧混合氧化物从未精制或废油中生产生物柴油。研究了金属氧化物的摩尔比,原料中的游离脂肪酸(FFA)和水含量,甲醇和油的摩尔比以及反应温度对生物柴油收率的影响。观察到Zn和La物种之间的强相互作用,催化剂活性增强。镧促进了氧化锌的分布,并增加了表面酸和碱位。发现锌与镧比例为3:1的催化剂可同时催化油的酯交换反应和脂肪酸酯化反应,同时使油和生物柴油的水解减至最少。发现生物柴油形成的反应温度窗口为170-220°C。即使使用未精制或废油,也可在3小时内获得高产率(96%)的脂肪酸甲酯(FAME)。

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